Department of Neurological Surgery, University of Pittsburgh, Pittsburgh, PA, USA.
Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA.
Nat Commun. 2022 Aug 22;13(1):4933. doi: 10.1038/s41467-022-32595-4.
Connectome maps region-to-region connectivities but does not inform which white matter pathways form the connections. Here we constructed a population-based tract-to-region connectome to fill this information gap. The constructed connectome quantifies the population probability of a white matter tract innervating a cortical region. The results show that 85% of the tract-to-region connectome entries are consistent across individuals, whereas the remaining (15%) have substantial individual differences requiring individualized mapping. Further hierarchical clustering on cortical regions revealed dorsal, ventral, and limbic networks based on the tract-to-region connective patterns. The clustering results on white matter bundles revealed the categorization of fiber bundle systems in the association pathways. This tract-to-region connectome provides insights into the connective topology between cortical regions and white matter bundles. The derived hierarchical relation further offers a categorization of gray and white matter structures.
连接组图谱描绘了区域间的连接,但无法说明哪些白质通路形成了这些连接。在这里,我们构建了一个基于人群的束到区连接组图谱,以填补这一信息空白。所构建的连接组图谱量化了一个白质束投射到一个皮质区域的人群概率。结果表明,约 85%的束到区连接组条目在个体间是一致的,而其余 (~15%)存在显著的个体差异,需要进行个体化映射。进一步对皮质区域进行层次聚类,根据束到区的连接模式揭示了背侧、腹侧和边缘网络。对白质束的聚类结果揭示了纤维束系统在联合通路上的分类。该束到区连接组图谱提供了皮质区域和白质束之间连接拓扑结构的深入了解。所得的层次关系进一步提供了灰质和白质结构的分类。